通过两种不同方法研究光超材料中具有分数贝塔衍生物演化的双核耦合器孤子

IF 1.3 4区 数学 Q1 MATHEMATICS
Meryem Odabasi Koprulu, Zehra Pinar Izgi
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引用次数: 0

摘要

超材料研究的飞速发展为在纳米尺度上控制和操纵光带来了新的可能性。特别是,光学超材料的设计和工程技术推动了光子学领域的发展,使具有前所未有功能的先进设备得以开发。在无数引人入胜的超材料结构中,具有贝塔导数演化的非线性定向耦合器已成为一个重要的探索方向,为光的传播和操纵提供了非凡的潜力。本研究通过伯努利法和完全多项式判别系统法这两种不同的方法,获得了具有时空分数贝塔导数演化的双核耦合器的孤波解。通过绘制部分求解图,显示了贝塔导数的影响。这些发现将有助于理解非线性光学中的物理行为,特别是带有光学超材料的双核耦合器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solitons of the Twin-Core Couplers with Fractional Beta Derivative Evolution in Optical Metamaterials via Two Distinct Methods
The rapid advancements in metamaterial research have brought forth a new era of possibilities for controlling and manipulating light at the nanoscale. In particular, the design and engineering of optical metamaterials have created advances in the field of photonics, enabling the development of advanced devices with unprecedented functionalities. Among the myriad of intriguing metamaterial structures, the nonlinear directional couplers with beta derivative evolution have emerged as a significant avenue of exploration, offering remarkable potential for light propagation and manipulation. This study obtains the solitary wave solutions for twin-core couplers having spatial-temporal fractional beta derivative evolution by using two different methods, the Bernoulli method and the complete polynomial discriminant system method. By graphing some of the obtained solutions, the effect of the beta derivative has been shown. The findings would be beneficial to understand physical behaviours in nonlinear optics, particularly twin-core couplers with optical metamaterials.
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来源期刊
Journal of Mathematics
Journal of Mathematics Mathematics-General Mathematics
CiteScore
2.50
自引率
14.30%
发文量
0
期刊介绍: Journal of Mathematics is a broad scope journal that publishes original research articles as well as review articles on all aspects of both pure and applied mathematics. As well as original research, Journal of Mathematics also publishes focused review articles that assess the state of the art, and identify upcoming challenges and promising solutions for the community.
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